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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >A multiscale evaluation of the surface integrity in boring trepanning association deep hole drilling
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A multiscale evaluation of the surface integrity in boring trepanning association deep hole drilling

机译:镗孔钻孔钻孔深孔钻井表面完整性的多尺度评价

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摘要

Boring trepanning association (BTA) deep hole drilling is one of the most important manufacturing techniques to produce a large length-to-diameter ratio hole for industrial applications. In addressing the challenge of excessive surface damage, inefficiency and poor indexing in BTA deep hole drilling, for which there are limited studies reported. The functional behaviour of deep hole machining and the correlation between the machined surface quality, subsurface layer deformation and the machining conditions are investigated in this paper, together with the drilling mechanism. Various parameter combinations are used to produce different samples on which surface roughness and microstructures are studied. Metallurgical characterization is performed on the subsurface regions, followed by qualitative and quantitative mechanical nanohardness investigations. Electron microscopic analysis reveals various surface features such as grooves and plateaus, folding, material flaking that are exclusive to deep hole drilling. It has been found that improved surface integrity in BTA drilling relies on a trade-off among feedrates and speeds. Although considered sample dependent, combination of a feedrate of 28 mm min(-1) and a speed of 630 r min(-1) can produce nearly excellent surface integrity. Grain structure observations over the subsurface reveal three different layered zones including an ultrafine grain structure layer, a transitional grain structure layer and a substrate material layer. A significantly hardened (56% increase) surface layer on cutting-and-burnishing region comparing with the solely cutting region is detected. The subsurface grain features are induced by repeated thermo-mechanical functioning that causes grain refinement and thus materials hardening. The different surface integrities are the result of comprehensive functions of the machining parameters and combined drilling mechanism.
机译:无聊的tr ep宁协会(BTA)深孔钻孔是为工业应用产生大长达直径比孔的最重要的制造技术之一。在解决过度表面损伤的挑战,BTA深孔钻井的过度表面损伤,低效率和差的索引,研究报告了有限的研究。本文研究了深孔加工的功能性能,以及加工表面质量,地下层变形和加工条件之间的相关性,以及钻孔机构。各种参数组合用于产生所研究的表面粗糙度和微结构的不同样品。在地下区域进行冶金表征,然后进行定性和定量的机械纳米型研究。电子显微镜分析揭示了各种表面特征,如凹槽和平稳,折叠,材料剥落,这是深孔钻孔。已经发现,BTA钻井的改善表面完整性依赖于进料和速度之间的折衷。虽然考虑样品依赖性,但28mm min(-1)的进给速度的组合和630 r min(-1)的速度可以产生几乎优异的表面完整性。谷物结构对地下的观察显示三种不同的层状区域,包括超细晶粒结构层,过渡晶粒结构层和基板材料层。检测到与仅切割区域比较的切割和抛光区域上的显着硬化(增加56%的增加)表面层。通过重复的热机械功能诱导地下晶粒特征,其导致晶粒细化,从而引起材料硬化。不同的表面完整性是加工参数和组合钻孔机构综合功能的结果。

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